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  4. Distributed Model Predictive Voltage Control for Distribution Grid Based on Relaxation and Successive Distributed Decomposition
 
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2022
Journal Article
Title

Distributed Model Predictive Voltage Control for Distribution Grid Based on Relaxation and Successive Distributed Decomposition

Abstract
Advanced control techniques for modern distribution grids are becoming fundamental for the reduction of grid reinforcements while maintaining network performances. In particular, as shown in literature, distributed algorithms for voltage control have gained much interests in comparison with the typical centralized formulation for its feasibility. Distributed model predictive control (MPC) is shown to optimally manage the Distributed Generators (DGs) over time and it can be implemented locally at the controllable sources. For this purpose, this paper adopts a distributed algorithm recently presented in the literature for solving a constraint-coupled optimization problem for model predictive voltage control. A detailed reformulation of the original MPC problem for the specific application is presented. Besides, this paper provides a calculation of the convergence limit for the value of the iteration step size of the algorithm, supported by numerical results. The proposed distributed solution of model predictive voltage control is compared with a centralized formulation via numerical simulation in terms of the percentage of error with the centralized solution and number of iteration for the convergence.
Author(s)
Din, Edoardo de
RWTH Aachen University  
Josevski, Martina
RWTH Aachen University  
Pau, Marco
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Monti, Antonello
Fraunhofer-Institut für Angewandte Informationstechnik FIT  
Ponci, Ferdinanda
RWTH Aachen University  
Journal
IEEE access  
Project(s)
Providing flexibility to the grid by enabling VPPs to offer both fast and slow dynamics control services
Funder
European Commission  
Open Access
File(s)
Download (2.26 MB)
Rights
CC BY
DOI
10.24406/publica-r-418817
10.1109/ACCESS.2022.3171345
Language
English
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Keyword(s)
  • Voltage control

  • Distributed optimization

  • Smart grids

  • Networked control systems

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